Thomas David M, Johnson Sandra A, Sims Natalie A, Trivett Melanie K, Slavin John L, Rubin Brian P, Waring Paul, McArthur Grant A, Walkley Carl R, Holloway Andrew J, Diyagama Dileepa, Grim Jonathon E, Clurman Bruce E, Bowtell David D L, Lee Jong-Seo, Gutierrez Gabriel M, Piscopo Denise M, Carty Shannon A, Hinds Philip W
Ian Potter Foundation Centre for Cancer Genomics and Predictive Medicine, and Sir Donald and Lady Trescowthick Laboratories, Peter MacCallum Cancer Center, Victoria, Melbourne, Australia.
J Cell Biol. 2004 Dec 6;167(5):925-34. doi: 10.1083/jcb.200409187.
The molecular basis for the inverse relationship between differentiation and tumorigenesis is unknown. The function of runx2, a master regulator of osteoblast differentiation belonging to the runt family of tumor suppressor genes, is consistently disrupted in osteosarcoma cell lines. Ectopic expression of runx2 induces p27KIP1, thereby inhibiting the activity of S-phase cyclin complexes and leading to the dephosphorylation of the retinoblastoma tumor suppressor protein (pRb) and a G1 cell cycle arrest. Runx2 physically interacts with the hypophosphorylated form of pRb, a known coactivator of runx2, thereby completing a feed-forward loop in which progressive cell cycle exit promotes increased expression of the osteoblast phenotype. Loss of p27KIP1 perturbs transient and terminal cell cycle exit in osteoblasts. Consistent with the incompatibility of malignant transformation and permanent cell cycle exit, loss of p27KIP1 expression correlates with dedifferentiation in high-grade human osteosarcomas. Physiologic coupling of osteoblast differentiation to cell cycle withdrawal is mediated through runx2 and p27KIP1, and these processes are disrupted in osteosarcoma.
分化与肿瘤发生之间负相关的分子基础尚不清楚。Runx2是成骨细胞分化的主要调节因子,属于肿瘤抑制基因的runt家族,其功能在骨肉瘤细胞系中持续受到破坏。Runx2的异位表达诱导p27KIP1,从而抑制S期细胞周期蛋白复合物的活性,并导致视网膜母细胞瘤肿瘤抑制蛋白(pRb)去磷酸化和G1期细胞周期停滞。Runx2与pRb的低磷酸化形式发生物理相互作用,pRb是已知的Runx2共激活因子,从而完成一个前馈环,其中逐渐退出细胞周期促进成骨细胞表型表达增加。p27KIP1的缺失扰乱了成骨细胞中短暂和终末细胞周期的退出。与恶性转化和永久细胞周期退出的不相容性一致,p27KIP1表达的缺失与高级别人类骨肉瘤中的去分化相关。成骨细胞分化与细胞周期退出的生理偶联是通过Runx2和p27KIP1介导的,而这些过程在骨肉瘤中被破坏。